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近期光遗传学生物传感器的进展。

Recent Advances in Metaphotonic Biosensors.

机构信息

Department of Biophysics, Institute of Quantum Biophysics, Sungkyunkwan University, Suwon 16419, Republic of Korea.

Department of Intelligent Precision Healthcare Convergence, Sungkyunkwan University, Suwon 16419, Republic of Korea.

出版信息

Biosensors (Basel). 2023 Jun 7;13(6):631. doi: 10.3390/bios13060631.

Abstract

Metaphotonic devices, which enable light manipulation at a subwavelength scale and enhance light-matter interactions, have been emerging as a critical pillar in biosensing. Researchers have been attracted to metaphotonic biosensors, as they solve the limitations of the existing bioanalytical techniques, including the sensitivity, selectivity, and detection limit. Here, we briefly introduce types of metasurfaces utilized in various metaphotonic biomolecular sensing domains such as refractometry, surface-enhanced fluorescence, vibrational spectroscopy, and chiral sensing. Further, we list the prevalent working mechanisms of those metaphotonic bio-detection schemes. Furthermore, we summarize the recent progress in chip integration for metaphotonic biosensing to enable innovative point-of-care devices in healthcare. Finally, we discuss the impediments in metaphotonic biosensing, such as its cost effectiveness and treatment for intricate biospecimens, and present a prospect for potential directions for materializing these device strategies, significantly influencing clinical diagnostics in health and safety.

摘要

亚波长光学器件能够在亚波长尺度上实现光的操控,并增强光与物质的相互作用,已成为生物传感领域的一个关键支柱。研究人员被亚波长光学生物传感器所吸引,因为它们解决了现有生物分析技术的局限性,包括灵敏度、选择性和检测限。在这里,我们简要介绍了在各种亚波长生物分子传感领域中使用的各种超表面,如折射率测定、表面增强荧光、振动光谱和手性传感。此外,我们列出了这些亚波长生物检测方案的常见工作机制。此外,我们总结了亚波长生物传感在芯片集成方面的最新进展,以实现医疗保健领域的创新即时检测设备。最后,我们讨论了亚波长生物传感面临的障碍,例如其成本效益和对复杂生物样本的处理,并为实现这些器件策略的潜在方向提出了展望,这将对健康和安全领域的临床诊断产生重大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd64/10296124/9f699910f4d1/biosensors-13-00631-g003.jpg

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